首页> 外文期刊>Postharvest Biology and Technology >Harvest maturity detection for 'Nam Dokmai #4' mango fruit (Mangifera indica L.) in consideration of long supply chains.
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Harvest maturity detection for 'Nam Dokmai #4' mango fruit (Mangifera indica L.) in consideration of long supply chains.

机译:考虑到供应链较长,“ Nam Dokmai#4”芒果果实( Mangifera indica L.)的收获成熟度检测。

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Harvest maturity criteria were specified for "Nam Dokmai #4" mango fruit. Focus was on harvest time decisions for long supply chains with minimum risk of ripening during reefer transports despite acceptable potential for subsequent postharvest ripening. For eleven fruit lots, harvested within 24 d (91-115 d after full bloom; DAFB), postharvest storage behavior at 14 degrees C (50-60% RH; ethylene absorption) was explored, distinguishing harvest maturity stages and post-storage quality levels, respectively, by means of principle component and cluster analysis. The impact of harvest maturity on post-storage quality was described by a partial least squares regression model. Among nine independent variables, titratable acids and the CIE hue angle of the mesocarp were the two most decisive attributes specifying harvest maturity stages of "Nam Dokmai #4" fruit, followed by the chlorophyll b content of the mesocarp and total soluble solids. Discrimination between immature and mature fruit additionally involved dry matter (DM), being constant as from 97 DAFB for mature fruit (18-19 g hg--1). Storage behavior of the "Nam Dokmai #4" fruit lots suggested early picking in the season (97 DAFB) after confirmation of harvest maturity by defined levels of the crucial mesocarp attributes to minimize ripening during reefer transports. Completion of harvest maturity specification based on mesocarp characteristics by concomitant consideration of DAFB proved inevitable for proper application-oriented harvest time decisions. All rights reserved, Elsevier.
机译:指定了“ Nam Dokmai#4”芒果果实的收获成熟度标准。尽管在随后的收获后成熟方面具有可接受的潜力,但重点是针对长条供应链的收获时间决策,使冷藏运输期间的成熟风险最小。对于11个水果批次,在24 d(盛开后91-115 d; DAFB)内收获,探索了14摄氏度(50-60%相对湿度;乙烯吸收)下的收获后贮藏行为,从而区分了收获的成熟阶段和贮藏后质量层次,分别通过主成分分析和聚类分析。偏最小二乘回归模型描述了收获成熟度对储藏后质量的影响。在九个独立变量中,中果皮的可滴定酸和CIE色相角是确定“ Nam Dokmai#4”果实收获成熟阶段的两个最决定性的属性,其次是中果皮的叶绿素b含量和总可溶性固形物。未成熟水果与成熟水果之间的区别还涉及干物质(DM),从97 DAFB起,成熟水果(18-19 g hg -1 )一直保持不变。 “ Nam Dokmai#4”水果批次的存储行为表明,在通过确定的关键中果皮属性水平确认收成成熟后,应在本季节提早采摘(97 DAFB),以最大程度减少冷藏运输中的成熟。伴随着DAFB的考虑,基于中果皮特性完成收获成熟度指标的证明对于正确的面向应用的收获时间决策是不可避免的。保留所有权利,Elsevier。

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